Answer:
Aerobic respiration generates a high amount of energy compared to anaerobic respiration.
Explanation:
Yeast is a unicellular organism that belongs to the kingdom FUNGI. Yeast is a phenomenal organism being that it is capable of both aerobic respiration and anaerobic respiration depending on whether there is availability or not of oxygen.
Yeast undergoes a type of anaerobic respiration called FERMENTATION in the absence of oxygen but when oxygen is present, it undergoes aerobic respiration. Note that aerobic respiration, which includes glycolysis, Krebs cycle, and oxidative phosphorylation, produces the highest amount of energy in form of ATP. This amount ranges from 32-34 ATP molecules. This is the major reason why aerobic respiration is advantageous over the anaerobic respiration.
The lifestyle factor that is least associated with death from diabetes mellitus is : Eating nonfat dairy and lean meats
<h3>Diabetes Mellitus </h3>
Diabetes mellitus is a lifestyle disease because it is a disease that is caused or affected by the way an individual lives his or her life. Diabetes mellitus is a condition whereby the body does not produce enough Insulin as required, and this condition can only be controlled by the lifestyle of the individual.
The consumption of food less in sugar and fat and also only eating when necessary to avoid obesity are some of the ways to control Diabetes Mellitus.
Hence we can conclude that The lifestyle factor that is least associated with death from diabetes mellitus is : Eating nonfat dairy and lean meats
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Gastric juice would digest the stomach lining, resulting in ulcers.
Sugar beets for sugar tend to have more minerals and are typically more easy to find than sugar cane so maybe an example of Conservation.
Answer:
A). True
Explanation:
tRNA, which means transfer RNA is one of the three types of RNA known in nature. The tRNA is found in the ribosome, where it plays a pivotal role in protein synthesis (translation). Transfer RNA is the RNA responsible for reading the nucleotides in the mRNA codon and carrying the amino acid that corresponds those codons to the ribosome.
The tRNA has a 3-dimensional structure that allows it to carry anticodon that reads codon and also carry amino acids on opposite ends. Hence, according to this question, tRNA is a type of RNA that delivers amino acids to the ribosome during protein synthesis.